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Oriented Growth of In‐Oxo Chain Based Metal‐Porphyrin Framework Thin Film for High‐Sensitive Photodetector

机译:以高敏光电探测器为导向基于氧化链链的金属卟啉框架薄膜的成长

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摘要

The potential of metal–organic frameworks (MOFs) for applications in optoelectronics results from a unique combination of interesting photophysical properties and straightforward tunability of organic and inorganic units. Here, it is demonstrated that using MOF approach chromophores can be assembled into well‐ordered 1D arrays using metal‐oxo strands as lead structure, and the resulting porphyrinic rows exhibit unique photophysical properties and allow the realization of highly sensitive photodetectors. A porphyrinic MOF thin film, In‐TCPP surface‐coordinated MOF thin films with [021] orientation is fabricated using a layer‐by‐layer method, from In(NO3)3 and TCPP (5,10,15,20‐(4‐carboxyphenyl)porphyrin). Detailed experimental and theoretical analysis reveals that the assembly yields a structure where In‐oxo strands running parallel to the substrate fix the chromophoric linkers to yield 1D arrays of porphyrins. The frontier orbitals of this highly anisotropic arrangement are localized in these columnar arrangements of porphyrins and result in high photoactivity, which is exploited to fabricate a photodetector with record (as compared to other organic materials) responsivity in visible regime of 7.28 × 1014 Jones and short rise/fall times (0.07/0.04 s). This oriented MOF thin film‐based high‐sensitive photodetector provides a new avenue to use inorganic, stable lead structures to assemble organic semiconductors into regular arrays, thus creating a huge potential for the fabrication of optoelectronic devices.
机译:金属有机框架(MOF)用于光电子中的应用的潜力是由有趣的光物理性质的独特组合和有机和无机单元的直接可调性。这里,证明使用MOF接近发色团可以使用金属 - 氧代链作为铅结构组装成众多的1D阵列,并且所得的卟啉行表现出独特的光药性,并允许实现高敏感的光电探测器。薄膜薄膜,具有[021]取向的TCPP表面协调的MOF薄膜,使用层逐层方法制造(NO 3)3和TCPP(5,10,15,20-(4 - 羧基苯基)卟啉)。详细的实验和理论分析表明,组件产生的结构,其中与基材平行地运行的氧代链,固定发色团接头以产生1D卟啉阵列。这种高级各向异性布置的前端轨道在卟啉的这些柱状布置中是本地化的,并导致高拍摄性,这是利用7.28×1014琼斯的可见制度中的记录(与其他有机材料相比)的光电探测器的光电探测器上升/秋季(0.07 / 0.04秒)。这种取向的MOF基于薄膜的高敏感光电探测器提供了一种新的途径,用于使用无机,稳定的铅结构将有机半导体组装成常规阵列,从而产生巨大的制造光电器件的潜力。

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